DocumentCode
1122255
Title
Semi-regular representation and progressive compression of 3-D dynamic mesh sequences
Author
Yang, Jeong-Hyu ; Kim, Chang-Su ; Lee, Sang-Uk
Author_Institution
LG Electron., Seoul
Volume
15
Issue
9
fYear
2006
Firstpage
2531
Lastpage
2544
Abstract
We propose an algorithm that represents three-dimensional dynamic objects with a semi-regular mesh sequence and compresses the sequence using the spatiotemporal wavelet transform. Given an irregular mesh sequence, we construct a semi-regular mesh structure for the first frame and then map it to subsequent frames based on the hierarchical motion estimation. The regular structure of the resulting mesh sequence facilitates the application of advanced coding schemes and other signal processing techniques. To encode the mesh sequence compactly, we develop an embedded coding scheme, which supports signal-to-noise ratio and temporal scalability modes. Simulation results demonstrate that the proposed algorithm provides significantly better compression performance than the static mesh coder, which encodes each frame independently
Keywords
computer graphics; data compression; mesh generation; motion estimation; wavelet transforms; 3D dynamic mesh sequences; advanced coding schemes; embedded coding scheme; hierarchical motion estimation; irregular mesh sequence; progressive compression; semi-regular representation; signal processing techniques; signal-to-noise ratio; spatiotemporal wavelet transform; static mesh coder; temporal scalability modes; three-dimensional dynamic objects; Image coding; Motion estimation; Partitioning algorithms; Predictive coding; Principal component analysis; Signal processing algorithms; Signal to noise ratio; Spatiotemporal phenomena; Video coding; Wavelet transforms; 3-D motion estimation; Progressive compression; semi-regular mesh sequence; three-dimensional (3-D) mesh compression;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2006.877413
Filename
1673436
Link To Document